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- W2098068887 abstract "Quantum states inevitably decay with time into a probabilistic mixture of classical states due to their interaction with the environment and measurement instrumentation. We present the first measurement of the decoherence dynamics of complex photon states in a condensed-matter system. By controllably preparing a number of distinct quantum-superposed photon states in a superconducting microwave resonator, we show that the subsequent decay dynamics can be quantitatively described by taking into account only two distinct decay channels: energy relaxation and pure dephasing. Our ability to prepare specific initial quantum states allows us to measure the evolution of specific elements in the quantum density matrix in a very detailed manner that can be compared with theory." @default.
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- W2098068887 date "2009-11-13" @default.
- W2098068887 modified "2023-10-16" @default.
- W2098068887 title "Decoherence Dynamics of Complex Photon States in a Superconducting Circuit" @default.
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- W2098068887 doi "https://doi.org/10.1103/physrevlett.103.200404" @default.
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